Which statement below regarding evaporation is not correct?A. When a liquid is first placed in a closed container, the evaporation rate is higher than it is in an open container under the same conditions. B. When a liquid is first placed in a closed container, the evaporation rate is higher than the condensation rate. C. When the rates of evaporation and condensation are equal, the system has reached dynamic equilibrium. D. Vapor pressure refers to the pressure of a gas at a given temperature in equilibrium with its liquid phase. E. Stronger intermolecular forces within the liquid typically result in a lower vapor pressure under a given set of conditions.

Answers

Answer 1

Answer:

A. When a liquid is first placed in a closed container, the evaporation rate is higher than it is in an open container under the same conditions.

Explanation:

Evaporation refers to the process by which a liquid changes to gas or vapor. It usually occurs at the surface of a liquid.

Factors that affects evaporation include; nature of the liquid, surface area of liquid exposed, temperature and wind.

Considering the options given:

A. When a liquid is first placed in a closed container, the evaporation rate is higher than it is in an open container under the same conditions. = False

This is false because, the more the surface of the liquid exposed, the higher the rate of evaporation.

B. When a liquid is first placed in a closed container, the evaporation rate is higher than the condensation rate. = True

This is true because when a liquid is first placed in a container, the equilibrium position favors evaporation initially than condensation as saturation of the space above the liquid with vapor has not been achieved.

C. When the rates of evaporation and condensation are equal, the system has reached dynamic equilibrium.= True

Dynamic equilibrium is achieved when the rate of forward and backward reaction, in this case, evaporation and condensation are equal.

D. Vapor pressure refers to the pressure of a gas at a given temperature in equilibrium with its liquid phase. = True

E. Stronger intermolecular forces within the liquid typically result in a lower vapor pressure under a given set of conditions.  = True

Strong intermolecular forces between the molecules of the liquid causes the liquid to remain in the liquid state rather than turning to vapor, thereby lowering vapor pressure


Related Questions

Explain why or why not it’s necessary for the scientific process to always follow the same route

Answers

Answer:

Explanation:

The scientific method describes the processes by which scientists gain knowledge about the world. It's characterized by six key elements: questions, hypotheses, experiments, observations, analyses, and conclusions. These elements are interrelated steps, so they don't always function in the same order.

How much grams are in 4.78 cup

Answers

Answer:

1130.89

Explanation:

Answer:

963.648

Explanat:::::::)))))))

If our aim is to make 100% pure alum, how could large chunks be bad? ​

Answers

Answer:

It prevent the solution from making 100% pure alum.

Explanation:

Large chunks could be bad if we make 100% pure alum because the large chunks prevent the production of 100% pure alum so for making 100% pure alum, large chunks will be removed from the solution or process. Alum is a chemical compound having salt of sulfate attached with aluminum in hydrated form i. e. presence of water. It is widely used in vaccines and for the purification of drinking water.

how are pure carbon, oxygen and hydrogen different from the compound ethanol which contains all three of those elements?

Answers

Elements Ca, O and H composes approximately [tex]\bold{95\%}[/tex] of the dry mass and is derived from [tex]\bold{CO_2}\ and \ \bold{H_2O}[/tex]. These are photosynthesized and probably established into complicated amino acids, protein, and protoplasm in simple carbohydrates. These are the principal components of carbon dioxides, proteins, and lipids.Throughout this question, Ca, O, and H elements could all be ethanol elements, but they have various chemical compounds whenever separate. They are pure elements, but ethanol is a combination.

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Answer:

Explanation:

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which are made matters

Answers

Answer:

Everything you can hold, taste, or smell is made of matter. Matter makes up everything you can see, including clothes, water, food, plants, and animals. It even makes up some things you cannot see, such as air or the smell of perfume.

Lesson Question: How can you determine the specific heat of a
metal using a calorimeter?
To do this computation for each of the four metals, you needed
several measurements.
v of the metal and the water
- First, you measured the
inside the calorimeter.
the metal and added it to water in the
. Then, you
calorimeter.
12.459
- After heat transferred from the metal to the water, you measured
the
of both materials.
DONE
Intro
No

Answers

Mass
Heated
Temperature change
Hopes this help

Answer:

the person above me is correct

Explanation:

can anyone please help with this!!

Answers

Answer:

2341, last option is the correct choice.

Explanation:

Boiling points of the given compounds are given as:

[tex]CH_4=-161.5\:C^{\circ}\\\\C_4H_{10}=-1\:C^{\circ}\\\\CH_2Cl_2=39.6\:C^{\circ}\\\\H_2O=100\:C^{\circ}[/tex]

Best Regards!

what would happen if the leopard attacked any one zebra or wildebeest.

Answers

Answer:

Lepord would win.

Explanation:

The Wildbeast is just another goat/sheep so its like a lepord fighting one of them so the Lepord would win.

g The tolerance of a Class A 50 mL transfer pipet is ±0.05 mL. A student uses an uncalibrated Class A transfer pipet to deliver a total of 150 mL of solution. What is the uncertainty in the delivered 150 mL? Note: tolerance is different from the uncertainty, so it does not follow the propagation formula of errors

Answers

Answer:

Uncertainty of tolerance transfer pipet  = ± 0.15

Volume of liquid between =  149.85, 150.15

Given:

Size of transfer pipet = 50 ml

Tolerance transfer pipet = ± 0.05 ml

Total transfer = 150 ml

Find:

Uncertainty of tolerance transfer pipet

Computation:

Uncertainty of tolerance transfer pipet  = [150 / 50](± 0.05)

Uncertainty of tolerance transfer pipet  = [3](± 0.05)

Uncertainty of tolerance transfer pipet  = ± 0.15

Volume of liquid between = (150-0.15), (150+0.15)

Volume of liquid between =  149.85, 150.15

Find and fix each mistake in the following equilibrium constant expressions.
Part A
2H2S(g)?2H2(g)+S2(g)
Keq=[H2][S2][H2S]
a. Keq=[H2S]^2/[H2]2[S2]
b. Keq=[H2S]/[H2][S2]
c. Keq=[H2]^2[S2]/[H2S]^2
Part B
CO(g)+Cl2(g)?COCl2(g)
Keq=[CO][Cl2][COCl2]
a. Keq=[CO][Cl2]^2/[COCl2]^2
b. Keq=[COCl2]/[CO][Cl2]
c. Keq=[COCl2]^2/[CO][Cl2]^2

Answers

Answer:

A. c. Keq=[H2]^2[S2]/[H2S]^2

B. b. Keq=[COCl2]/[CO][Cl2]

Explanation:

Hello,

In this case, considering the law of mass action which states that the equilibrium expression is written in terms of the concentration of products divided by the concentration of reactants considering the stoichiometric coefficients as powers we obtain:

A. For the reaction:

[tex]2H_2S(g)\rightleftharpoons 2H_2(g)+S_2(g)[/tex]

The equilibrium expression is:

[tex]Keq=\frac{[H_2]^2[S_2]}{[H_2S]^2}[/tex]

Therefore, answer is c. Keq=[H2]^2[S2]/[H2S]^2.

B. For the reaction:

[tex]CO(g)+Cl_2(g)\rightleftharpoons COCl_2(g)[/tex]

The equilibrium expression is:

[tex]Keq=\frac{[COCl_2]}{[CO][Cl_2]}[/tex]

Therefore, answer is b. Keq=[COCl2]/[CO][Cl2].

Regards.

1) How many moles of atoms are in 3.00 g of 13C?2) Based on your answer in Part B, how many electrons are in this amount of 13C?3) Based on your answer in Part B, how many neutrons are in this amount of 13C?

Answers

Answer:

1) 1.39 * 10²³ atoms

2) 8.43 * 10²³ electrons

3) 9.73 * 10²³ neutrons

Explanation:

1) 13 g of C-13 contains 6.02 *10²³ atoms

3.00 g of C-13 will contain 6.02 * 10²³ * (3/13) = 1.39 * 10²³ atoms

2) Each atom of C-13 contains 6 electrons

Therefore 3.00 g of C-13 will contain 6 * 1.39 * 10²³  electrons = 8.43 * 10²³ electrons

3) Each atom of C-13 contains 7 neutrons

Therefore, 3.00 g of C-13 will contain 7 * 1.39 * 10²³ neutrons = 9.73 * 10²³ neutrons

Calculate the molar solubility of CaF2 in a 0.25 m solution of NaF(aq).
(Ksp (CaF2) = 4.0 x 10-11)

Answers

Answer:

6.4 × 10^-10 M

Explanation:

The molar solubility of the ions in a compound can be calculated from the Ksp (solubility constant).

CaF2 will dissociate as follows:

CaF2 ⇌Ca2+ + 2F-

1 mole of Calcium ion (x)

2 moles of fluorine ion (2x)

NaF will also dissociate as follows:

NaF ⇌ Na+ + F-

Where Na+ = 0.25M

F- = 0.25M

The total concentration of fluoride ion in the solution is (2x + 0.25M), however, due to common ion effect i.e. 2x<0.25, 2x can be neglected. This means that concentration of fluoride ion will be 0.25M

Ksp = {Ca2+}{F-}^2

Ksp = {x}{0.25}^2

4.0 × 10^-11 = 0.25^2 × x

4.0 × 10^-11 = 0.0625x

x = 4.0 × 10^-11 ÷ 6.25 × 10^-2

x = 4/6.25 × 10^ (-11+2)

x = 0.64 × 10^-9

x = 6.4 × 10^-10

Therefore, the molar solubility of CaF2 in NaF solution is 6.4 × 10^-10M

The molar solubility should be 6.4 × 10^-10 M

Calculation of the molar solubility:

Here

CaF2 will dissociate should be

CaF2 ⇌Ca2+ + 2F-

where,

1 mole of Calcium ion (x)

2 moles of fluorine ion (2x)

Now

NaF will also dissociate like

NaF ⇌ Na+ + F-

Here

Na+ = 0.25M

F- = 0.25M

Now

Ksp = {Ca2+}{F-}^2

Ksp = {x}{0.25}^2

4.0 × 10^-11 = 0.25^2 × x

4.0 × 10^-11 = 0.0625x

x = 4.0 × 10^-11 ÷ 6.25 × 10^-2

x = 4/6.25 × 10^ (-11+2)

x = 0.64 × 10^-9

x = 6.4 × 10^-10

Therefore, the molar solubility of CaF2 in NaF solution is 6.4 × 10^-10M

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A compound is found to contain 46.68 % nitrogen and 53.32 % oxygen by mass. To answer the question, enter the elements in the order presented above. QUESTION 1: The empirical formula for this compound is . QUESTION 2: The molar mass for this compound is 30.01 g/mol. The molecular formula for this compound is

Answers

Answer:

Q1: NO

Q2: NO

Explanation:

Step 1: Given data

Percentage by mass of nitrogen: 46.68%

Percentage by mass of oxygen: 53.32%

Step 2: Divide each percentage by the mass of the element

N: 46.68/14.01 = 3.332

O: 53.32/16.00 = 3.332

Step 3: Divide both numbers by the smallest one (in this case is the same)

N: 3.332/3.332 = 1

O: 3.332/3.332 = 1

The empirical formula is NO. Its molar mass is 30.01 g/mol.

Step 4: Calculate "n"

n = molar mass of the molecular formula / molar mass of the empirical formula

n = (30.01 g/mol) / (30.01 g/mol) = 1

Step 5: Determine the molecular formula

We do so by multiplying the empirical formula by "n".

NO × 1 = NO

Weak noncovalent interactions:__________ a. do not include ionic interactions b. always involve water. c. can have a large cumulative effect d. combine to form covalent interactions

Answers

Answer:

c. can have a large cumulative effect

Explanation:

Noncovalent interactions between molecules are weaker than covalent interactions. Noncovalent interactions between molecules are of various types which  include van der Waals forces, hydrogen bonding, and electrostatic interactions or ionic bonding.

van der Waals forces  are weak interactions found in all molecules. They include dipole-dipole interactions - formed due to the differences in the electronegativity of atoms - and the London dispersion forces.

Hydrogen Bonds  results when electrons are shared between hydrogen and a strongly electronegative atoms like fluorine, nitrogen, oxygen. The hydrogen acquires a partial positive charge while the electronegative atom acquires a partial negative. This results in attraction between hydrogen and neighboring electronegative molecules.

Ionic bonds result due to the attraction between groups with opposite electrical charges, for example in common salt between sodium and chloride ions.

Even though these noncovalent interactions are weak, cumulatively, they exert strong effect. For example, the high boiling point of water and the crystal structure of ice are due to hydrogen bonding.

Liquids that do not mix can be separated by which technique

A) Filtration
B) Distillation
C) Decantation
D) Evaporation

Answers

Decantation, like when you take oil and mix it with water.

Determine the partial negative charge on the bromine atom in a c−br bond. the bond length is 1.93 å and the bond dipole moment is 1.40 d . express your answer using 3 significant figures. the partial negative charge on the bromine atom = previous answersrequest answer incorrect; try again; 4 attempts remaining provide feedback.

Answers

Answer:

The value is [tex]x = 0.151 \ e [/tex]

Explanation:

From the question we are told that

The bond length is [tex]l = 1.93\ \r a = 1.93 *1 *10^{-10} =1.93 *10^{-10}\ m [/tex]

The bond dipole moment is [tex] \mu = 1.40 d = 1.40 * 3.33564 *10^{-30} = 4.6699 *10^{-30} \ C \cdot m[/tex]

Generally the dipole moment is mathematically represented as

[tex]\mu = Q * l[/tex]

Here Q is the partial negative charge on the bromine atom

So

[tex]Q = \frac{\mu}{ l}[/tex]

=> [tex]Q = \frac{4.6699 *10^{-30}}{ 1.93 *10^{-10} }[/tex]

=> [tex]Q = 2.42 *10^{-20} C [/tex]

Generally

1 electronic charge(e) is equivalent to [tex]1.60*10^{-19} C[/tex]

So x electronic charge(e) is equivalent to [tex]Q = 2.42 *10^{-20} C [/tex]

=> [tex]x = \frac{2.42 *10^{-20}}{1.60*10^{-19} }[/tex]

=>     [tex]x  =  0.151  \ e [/tex]

How many electrons are found in an atom of Oyxgen?
10 points
16
O 24
8

Answers

Answer:

8 electrons.

Explanation:

On a periodic table, one can see that Oxygen has 8 protons.

The number of protons in a neutral atom will always equal the number of electrons.

Methanol, a potential replacement for gasoline as an automotive fuel, can be made from H2 and CO by the reaction
CO(g) + 2H2(g) CH3OH(g)
At 500.0 K, this reaction has Kp = 6.25 x 10-3. Calculate ?

Answers

Answer:

[tex]\Delta G=-48.2kJ/mol[/tex]

Explanation:

Hello,

In this case, considering that the relationship between Kp and K is:

[tex]K=\frac{Kp}{RT^{\Delta \nu}}[/tex]

Whereas the change in the number of moles (stoichiometric coefficients) is:

[tex]\Delta \nu=1-2-1=-2[/tex]

The equilibrium constant is:

[tex]K=\frac{6.25x10^{-3}}{(8.314\frac{J}{mol\times K}*500.0K)^{-2}}\\\\K=1.08x10^{5}[/tex]

In such a way, the Gibbs free energy of reaction is:

[tex]\Delta G=-RTln(K)=-8.314\frac{J}{mol\times K}*500.0K*ln(1.08x10^5)\\\\\Delta G=-48.2kJ/mol[/tex]

Regards.

You have a 16 g sample of ethanol with a density of 0.7893 g/mL. What volume of ethanol do you have?

Answers

Answer:

Density is mass/volume d=m/v   so volume = m/d or mass divided by density.

That would be 23 / 0.7893 = 29.1397 or 29.14 mL.  Grams cancels out

Explanation:

The volume of ethanol is 20.27 g/ml.

What is volume?

The area occupied by a three-dimensional object is its volume. It can be determined using density and mass. Liters are used to measure it. The overall weight of a thing is its mass. M designates it.

The mass per unit volume is known as density. The capital letter D and the symbol rho stand for density. You can figure it out by dividing the mass by the volume.

rho = m / V

rho = density

m = mass

V = volume

Given the mass of the sample of ethanol weighs 16 g

The density of 0.7893 g/mL

Putting the values in the equation

Volume = 16 / 0.7893 = 20.27

Thus, the volume of ethanol is 20.27 g/ml.

To learn more about volume, refer to the link:

https://brainly.com/question/16940422

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Glassblower creating sculptures out of glass physical or chemical

Answers

Answer:

phsical

Explanation:

it is a phisical cuz your only changing the shape not the chemical structure

Multiply 17.243 × 0.95 = _____

Answers

Answer:16.38085

Explanation:Aline the decimals then start multiplying.

2A + 3B--> A2B3 If 3mL of 0.04M A, 4mL of 0.02M B and 3mL of H2O was into a reaction test tube, what are the concentrations of A and B in the test tube.

Answers

Answer:

[tex][A]=0.012M[/tex]

[tex][B]=0.008M[/tex]

Explanation:

Hello,

In this case, given the concentration and volume of each reactant, we first compute their moles in the solution:

[tex]n_A=0.003L*0.04mol/L=1.2x10^{-4}mol\\\\n_B=0.004L*0.02mol/L=8x10^{-5}mol[/tex]

Thus, since the total volume is computed given the volume of each reactant as well as the extra water, we have:

[tex]V=0.003L+0.004L+0.003L=0.010L[/tex]

Thus, the concentrations of A and B are:

[tex][A]=\frac{1.2x10^{-4}mol}{0.010L}=0.012M[/tex]

[tex][B]=\frac{8x10^{-5}mol}{0.010L}=0.008M[/tex]

Best regards.

(3.605 X 10^-27) + (4.01 X 10^-25)
Answer in scientific notation

Answers

the answer is 4.04605 X 10^-25

What technique would you use to separate the Drierite from the silicon? *

Answers

Answer:

Filtration

Explanation:

Filtration is a separation technique used in the laboratories to separate two elements or compounds by using a filter paper and a beaker.

Drierite is also know as calcium sulphate and silicon is made up of silica.

The filtration equipment are taken to separate these two components. The separation method is used in the second beaker by pouring the mixture through a filtering funnel and using a filter paper. The solid remaining of silicon remains on the filter paper separating the two.

Which is more dense? A foam ball or a bowling ball?
Please help! Only answer if you know the answer 100%

Answers

a bowling ball.
definition of dense-closely compacted in substance

5.05 g
Express your answer as an integer.

Answers

Answer:5.5

Explanation:

What is the potential energy of the ball when it gets to its maximum height just before falling back to the ground?J

Answers

Answer:

9.8 joules

Explanation:

due to acceleration due to gravity

why do oxygen and hydrogen can be kept underwater​

Answers

The reason we cannot breath liquid water is because the oxygen used to make the water is bound to two hydrogen atoms and we cannot breath the resulting liquid

A sample of water is measured with a 2 mL volumetric pipet. What volume
measurement should be recorded with the correct number of decimal places?

Answers

Answer:

Explanation:

A pipette is used to measure an exact volume of liquid; a pipette can only measure it's exact recommended volume (it can't measure more or less).

Hence, a 2-mL volumetric pipette can only measure 2 ml and would be recorded as 2.00 (ml). This is because simple volumes are usually recorded in two decimal places.

Which one of the following compounds produces a basic solution when dissolved in water? a. Na_2O b. CO_2 c. O_2 d. SO_2 e. OF_2

Answers

Answer:

a. Na_2O.

Explanation:

Hello,

In this case, the formation of a basic solution accounts for the formation of a base or hydroxide which contains hydroxide ions. Such hydroxides are formed via the combination reaction between water and a basic oxide which is formed by a metal and oxygen, that is way a. Na_2O forms the basic solution as it forms sodium hydroxide via:

[tex]Na_2O+H_2O\rightarrow 2NaOH[/tex]

Best regards.

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